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Optoelectronics of Multijunction Heterostructures of Transition Metal Dichalcogenides

Authors
Choi, WoosukAkhtar, ImtisalKang, DongwoonLee, Yeon-JaeJung, JongwanKim, Yeon HoLee, Chul-HoHwang, David J.Seo, Yongho
Issue Date
11-3월-2020
Publisher
AMER CHEMICAL SOC
Keywords
Two-dimensional materials; Multilayered heterostructures; Transition metal dichalcogenides; MoSe2; WSe2; p-n junction
Citation
NANO LETTERS, v.20, no.3, pp.1934 - 1943
Indexed
SCIE
SCOPUS
Journal Title
NANO LETTERS
Volume
20
Number
3
Start Page
1934
End Page
1943
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/57299
DOI
10.1021/acs.nanolett.9b05212
ISSN
1530-6984
Abstract
Among p-n junction devices with multilayered heterostructures with WSe2 and MoSe2, a device with the MoSe2-WSe2-MoSe2 (NPN) structure showed a remarkably high photoresponse, which was 1000 times higher than the MoSe2-WSe2 (NP) structure. The ideality factor of the NPN structure was estimated to be similar to 1, lower than that of the NP structure. It is claimed that the NPN structure formed a thinner depletion region than that of the NP structure because of the difference of carrier concentrations of MoSe2 and WSe2. Hence, the built-in electric field was weaker, and the motion of the photocarriers was facilitated. These behaviors were confirmed experimentally from a photocurrent mapping analysis and Kelvin probe force microscopy. The work function depended on the wavelength of the illuminator, and quasi-Fermi level was estimated. The surface photovoltage on the MoSe2 region was higher than that on WSe2 because the lower bandgap of MoSe2 induces more electron-hole pair generation.
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